Conscious architecture and circular economy for a transition in building: The IMIP project as a case study

[EN] This research explores the role of design in fostering sustainable transitions through systemic thinking in the building sector, addressing the dynamic, multi-scalar, multi-species, and transdisciplinary challenges inherent in socio-ecological and socio-technical transformations. The study is g...

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Detalhes bibliográficos
Autores: Gilabert-Sanz, Salvador, Oliver Villanueva, José Vicente|||0000-0003-2842-7834
Formato: artículo
Fecha de publicación:2025
País:España
Recursos:Universitat Politècnica de València (UPV)
Repositorio:RiuNet. Repositorio Institucional de la Universitat Politécnica de Valéncia
Idioma:inglés
OAI Identifier:oai:riunet.upv.es:10251/232022
Acesso em linha:https://riunet.upv.es/handle/10251/232022
Access Level:acceso abierto
Palavra-chave:Conscious architecture
Sustainable construction
Circular economy
Cork insulation
Life cycle assessment
Descrição
Resumo:[EN] This research explores the role of design in fostering sustainable transitions through systemic thinking in the building sector, addressing the dynamic, multi-scalar, multi-species, and transdisciplinary challenges inherent in socio-ecological and socio-technical transformations. The study is grounded in Transition Design principles, recognizing the agency of ecological, human, and computational intelligence. By embracing systemic approaches, this paper underscores the importance of long-term thinking, collective action, pluralistic perspectives, and value co-creation among diverse actors. The results highlight the IMIP (Innovative Eco-Construction System Based on Interlocking Modular Insulation Wood & Cork-Based Panels) project s contribution to circular economy principles, demonstrating its environmental and social impact through a comprehensive Life Cycle Assessment (LCA), as an innovative holistic approach to low-energy construction and near-zero-emissions strategies in construction, leveraging local timber and cork as materials for construction systems in building. These results demonstrate the potential of locally based bio-based materials and modular construction systems to promote circularity, reduce ecological footprints, and enhance community resilience. The findings reinforce the significance of design as a driver of systemic change in the building sector, emphasizing the interdependencies and feedback loops between human actions, natural ecosystems, and technological infrastructures.